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Author

Alan R. Sanders

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Open access Jul 2026

Unified genetic risk score for prostate cancer enables improved risk stratification for clinical decision-making.

BACKGROUND Current clinical approaches to inherited prostate cancer (PCa) risk rely on binary classification of pathogenic variant (PV) carrier status without accounting for gene-specific heterogeneity or polygenic risk. We developed an integrated genetic risk model reflecting a continuum of inherited susceptibility. METHODS In the UK Biobank (UKB; n=218 484), we evaluated associations of PVs in 11 clinically recommended genes and a polygenic risk score (PRS) with incident PCa using Cox models. A continuum model (GenProb-PCa) incorporating gene-specific PVs and PRS was developed and compared with binary PV-based models. Model performance was assessed using discrimination, calibration and continuous net reclassification index (cNRI). External validation was performed in a health system cohort, the Genomic Health Initiative (GHI; n=6590). RESULTS Five genes (ATM, BRCA2, CHEK2, HOXB13, MSH2) and the PRS were independently associated with PCa risk (all p<0.001) in UKB. Compared with binary models, GenProb-PCa demonstrated superior discrimination (C-index 0.69 vs 0.52; p<0.001), with significant improvement in reclassification (cNRI 0.58; p<0.001). Findings were validated in GHI using the UKB-derived coefficients (C-index 0.64 vs 0.54, p<0.001; cNRI 0.31, p<0.001). Compared with binary PV-based models, 20% of non-PV carriers were reclassified to higher risk groups and 60% of carriers to lower risk groups. The model identified individuals at markedly elevated lifetime risk, with cumulative incidence exceeding 20% by age 75 among the top 8% of the distribution. CONCLUSIONS An integrated continuum genetic risk model, GenProb-PCa, improves PCa risk stratification beyond binary approaches by capturing heterogeneity in inherited risk. This framework may enable more precise risk-based screening strategies.

Zhuqing Shi, Ashley J Mulford, Jun Wei et al. · 0 citations
Open access Jul 2026

Cross-definition GWAS of IBS in 2.8 million individuals reveals cardiometabolic and triglyceride-linked mechanisms

This study provides the most comprehensive assessment of IBS genetics to date, demonstrating reproducible polygenic inheritance and linking IBS risk to convergent neurogastrointestinal and novel cardiometabolic mechanisms, highlight specific biological pathways and actionable mechanisms and outline translational opportunities emerging from integrated computational analyses.

Biagio Di Lorenzo, L. Camargo Tavares, Cristian Díaz-Muñoz et al. · 0 citations